We study the properties of dense matter in neutron stars and calculate the structure of the stars based on the Zimanyi & Moszkowski (ZM) model in the relativistic mean-field theory. We also compare these results with those based on the Boguta (BB) model with a recent satisfactory parameter set. The two models satisfy the requirements from the observations of the masses of binary radio pulsars, the rotation frequencies of millisecond pulsars, the redshifts of the e + annihilation lines of some y-ray bursts if they are neutron stars, and the crustal moment of inertia of neutron stars deduced from the glitch events. Other observations may provide a way to discriminate between the two models. We suggest that the most important observational dis...
We investigate the properties of the neutron star with relativistic mean-field models. We incorporat...
Various models for the equation of state (EoS) for a neutron star have been considered using the rel...
Properties of nuclear matter and neutron star are described in relativistic mean field theory with d...
We calculate crustal properties of neutron stars, namely, mass ($$M_\mathrm{crust}$$), radius ($$R_\...
We study the equation of state (EOS) of the dense matter in the core of neutron stars with hyperons ...
Nuclear physics can be applied in various ways to the study of neutron stars. This thesis reports on...
The equations of state of the neutron star matter are calculated in the relativistic mean-field appr...
We study some properties of the simplest neutron stars ( NSs) in the Glendenning - Moszkowski ( GM) ...
We have used the Zimanyi & Moszkowski model in the relativistic mean-field theory to study the prope...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
With the equations of state provided by the newly developed density-dependent relativistic Hartree-F...
In this work we introduce a class of relativistic models for nuclear matter and neutron stars which ...
With the equations of state provided by the newly developed density-dependent relativistic Hartree-F...
Neutron stars are some of the densest manifestations of massive objects in the universe. They are id...
Using a solitonic model of nuclear matter, the Bogomol'nyi-Prasad-Sommerfield (BPS) Skyrme model, we...
We investigate the properties of the neutron star with relativistic mean-field models. We incorporat...
Various models for the equation of state (EoS) for a neutron star have been considered using the rel...
Properties of nuclear matter and neutron star are described in relativistic mean field theory with d...
We calculate crustal properties of neutron stars, namely, mass ($$M_\mathrm{crust}$$), radius ($$R_\...
We study the equation of state (EOS) of the dense matter in the core of neutron stars with hyperons ...
Nuclear physics can be applied in various ways to the study of neutron stars. This thesis reports on...
The equations of state of the neutron star matter are calculated in the relativistic mean-field appr...
We study some properties of the simplest neutron stars ( NSs) in the Glendenning - Moszkowski ( GM) ...
We have used the Zimanyi & Moszkowski model in the relativistic mean-field theory to study the prope...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
With the equations of state provided by the newly developed density-dependent relativistic Hartree-F...
In this work we introduce a class of relativistic models for nuclear matter and neutron stars which ...
With the equations of state provided by the newly developed density-dependent relativistic Hartree-F...
Neutron stars are some of the densest manifestations of massive objects in the universe. They are id...
Using a solitonic model of nuclear matter, the Bogomol'nyi-Prasad-Sommerfield (BPS) Skyrme model, we...
We investigate the properties of the neutron star with relativistic mean-field models. We incorporat...
Various models for the equation of state (EoS) for a neutron star have been considered using the rel...
Properties of nuclear matter and neutron star are described in relativistic mean field theory with d...